Development of Air‐Cooled Carbide‐Free Bainite/Martensite Multiphase Steel: Transformation Kinetics, Microstructure, and Mechanical Properties

Author:

Cheng Xuan1,Gao Guhui1ORCID,Liu Rong1,Gui Xiaolu1,Bai Bingzhe2,Feng Chun3

Affiliation:

1. School of Mechanical, Electronic, and Control Engineering Beijing Jiaotong University Beijing 100044 China

2. School of Material Science and Engineering Key Laboratory of Advanced Materials of Ministry of Education Tsinghua University Beijing 100084 China

3. CNPC Tubular Goods Research Institute Xi'an 710077 China

Abstract

An air‐cooled low‐carbon Mn–Si–Cr alloyed steel with multiphase microstructure of carbide‐free bainite/martensite (CFB/M) is developed. The kinetics of bainitic transformation during air‐cooling process is discussed via considering the transformation latent heat with help of the measured temperature‐cooling curves. Results show that the CFB formed during air cooling can effectively refine the multiphase microstructure and stabilize the film‐like retained austenite that contributes to transformation‐induced plasticity effect upon deformation. An optimum combination of strength, ductility, and toughness of the air‐cooled bainitic steel is achieved (tensile strength: 1418 MPa, total elongation: 15.8%, and Charpy V‐notch impact energy: ≈71 J). The newly developed Mn–Si–Cr alloyed air‐cooled bainitic steel exhibits superior mechanical properties to the commercial 23CrNi3Mo steel but has a much lower alloy cost.

Funder

Key Technologies Research and Development Program

Publisher

Wiley

Subject

Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics

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